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Pilot Performance, Workload, and Situation Awareness During Lunar Landing Mode Transitions

机译:月球着陆模式转换过程中的飞行员性能,工作量和态势感知

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摘要

Aircraft and spacecraft pilots frequently change their level of supervisory control between full autopilot and other modes, providing varying levels of manual control. Therefore, multimodal systems must transition "gracefully," meaning without unsafe decreases in flight performance or unacceptable changes in workload or situation awareness. Thirteen subjects flew a fixed base simulation of the NASA Constellation Program Altair lunar lander that transitioned from full autopilot to one of three flight-director-guided rate-command attitude hold manual control modes. After training, each subject flew 24 approaches, half of which included a landing point redesignation at the time of the mode transition requiring the pilot to null additional guidance errors. Bedford subjective workload and two-choice embedded secondary task response times were used to quantify temporal changes in mental workload. Situation awareness transients were detected by analysis of a tertiary task, verbal callouts of altitude, fuel, and terrain hazards. Graceful transitions were particularly difficult because Altair's large inertia made the plant dynamics relatively sluggish. Transitions to manual control increased subjective and objective workloads and decreased callout accuracy in proportion to the number of flight control axes being manually commanded.
机译:飞机和航天飞机驾驶员经常在全自动驾驶和其他模式之间更改其监督控制级别,从而提供不同级别的手动控制。因此,多式联运系统必须“优雅地”过渡,这意味着飞行性能不会出现不安全的下降,工作量或态势感知也不会出现不可接受的变化。 13名受试者进行了NASA星座计划Altair月球着陆器的固定基础仿真,该仿真器从全自动驾驶过渡到三种由飞行指挥官指导的速率命令姿态之一,并保持了手动控制模式。训练后,每个受试者飞了24个进近点,其中一半包括在模式转换时重新指定着陆点,这要求飞行员取消其他引导误差。贝德福德的主观工作量和两选择嵌入的次要任务反应时间用于量化心理工作量的时间变化。通过对第三项任务,高度,燃油和地形危害的口头标注进行分析,可以发现态势感知瞬变。平稳过渡特别困难,因为Altair的惯性大,使设备动力学相对缓慢。向手动控制的过渡增加了主观和客观的工作量,并且与手动命令的飞行控制轴的数量成比例地降低了标注的准确性。

著录项

  • 来源
    《Journal of Spacecraft and Rockets》 |2013年第4期|793-801|共9页
  • 作者单位

    Massachusetts Institute of Technology, Cambridge, Massachusetts 02139;

    Charles Stark Draper Laboratory, Inc., Cambridge, Massachusetts 02139;

    Massachusetts Institute of Technology, Cambridge, Massachusetts 02139;

    Massachusetts Institute of Technology, Cambridge, Massachusetts 02139;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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